Studying at the University of Verona

Here you can find information on the organisational aspects of the Programme, lecture timetables, learning activities and useful contact details for your time at the University, from enrolment to graduation.

Study Plan

The Study Plan includes all modules, teaching and learning activities that each student will need to undertake during their time at the University.
Please select your Study Plan based on your enrollment year.

CURRICULUM TIPO:

3° Year   It will be activated in the A.Y. 2027/2028

ModulesCreditsTAFSSD
1 couple of modules to be chosen from the following for a total of 12 CFU
12
C
-
1st couple
6
C
MED/18 ,MED/33
2nd couple
6
C
ING-INF/06
6
C
ING-IND/22
4th couple
6
C
MED/18 ,MED/33
6
C
MED/34 ,M-EDF/02
5th couple
6
C
ING-INF/05
Final exam
6
E
-
It will be activated in the A.Y. 2027/2028
ModulesCreditsTAFSSD
1 couple of modules to be chosen from the following for a total of 12 CFU
12
C
-
1st couple
6
C
MED/18 ,MED/33
2nd couple
6
C
ING-INF/06
6
C
ING-IND/22
4th couple
6
C
MED/18 ,MED/33
6
C
MED/34 ,M-EDF/02
5th couple
6
C
ING-INF/05
Final exam
6
E
-
Modules Credits TAF SSD
Between the years: 1°- 2°- 3°
English B2
3
E
-
Between the years: 2°- 3°
Between the years: 2°- 3°

Legend | Type of training activity (TTA)

TAF (Type of Educational Activity) All courses and activities are classified into different types of educational activities, indicated by a letter.




S Placements in companies, public or private institutions and professional associations

Teaching code

4S009870

Credits

6

Scientific Disciplinary Sector (SSD)

ING-INF/04 - AUTOMATICA

Learning objectives

The course aims to provide the theoretical and practical tools to model, analyze and control a dynamic system in the time and frequency domain.
At the end of the course the student will have acquired the following knowledge and skills:
- Ability to analyze the properties of a dynamic system in the time and frequency domain,
- Ability to evaluate the stability, robustness and performance of a feedback system,
- Ability to design a control system starting from the robustness and performance requirements,
- Ability to evaluate the feasibility of a control system and evaluate the most appropriate design method,
- Being able to deal with complementary professionals for the design of a complex control system,
- Ability to continue studies in the context of control systems with a sufficient degree of autonomy.